Cargando…

Strengthening Mechanisms in CoCrFeNiX(0.4) (Al, Nb, Ta) High Entropy Alloys Fabricated by Powder Plasma Arc Additive Manufacturing

In high entropy alloys (HEAs), the addition of large-size atoms results in lattice distortion and further leads to solid solution strengthening or precipitation strengthening. However, the relationship between atomic radius, solid solution strengthening and precipitation strengthening has not been d...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Yupeng, Shen, Qingkai, Chen, Xizhang, Jayalakshmi, Subramanian, Singh, Ramachandra Arvind, Konovalov, Sergey, Deev, Vladislav B., Prusov, Evgeny S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8001620/
https://www.ncbi.nlm.nih.gov/pubmed/33809342
http://dx.doi.org/10.3390/nano11030721
_version_ 1783671272845082624
author Zhang, Yupeng
Shen, Qingkai
Chen, Xizhang
Jayalakshmi, Subramanian
Singh, Ramachandra Arvind
Konovalov, Sergey
Deev, Vladislav B.
Prusov, Evgeny S.
author_facet Zhang, Yupeng
Shen, Qingkai
Chen, Xizhang
Jayalakshmi, Subramanian
Singh, Ramachandra Arvind
Konovalov, Sergey
Deev, Vladislav B.
Prusov, Evgeny S.
author_sort Zhang, Yupeng
collection PubMed
description In high entropy alloys (HEAs), the addition of large-size atoms results in lattice distortion and further leads to solid solution strengthening or precipitation strengthening. However, the relationship between atomic radius, solid solution strengthening and precipitation strengthening has not been discerned yet. In this work, CoCrFeNiX(0.4) (X = Al, Nb, Ta, with an equi-atomic radius) HEAs were prepared by powder plasma arc additive manufacturing (PPA-AM) and evaluated for their mechanical properties. Compression and nano-indentation hardness tests showed that the HEA with Ta showed the best properties. The influence of atomic radius and solid solubility on solid solution strengthening was investigated and the main strengthening mechanism that determines the mechanical properties of the developed HEAs was analyzed. The results showed that (i) the CoCrFeNiAl(0.4) alloy did not show any solid solution strengthening effect and that a clear relation between solid solution strengthening and atomic size was not observed; (ii) in both CoCrFeNiTa(0.4) and CoCrFeNiNb(0.4) HEAs, precipitation strengthening and grain boundary strengthening effects are observed, wherein the difference in mechanical properties between both the alloys can be mainly attributed to the formation of fine eutectic structure in CoCrFeNiTa(0.4); and (iii) from the microstructural analyses, it was identified that, in the CoCrFeNiTa(0.4) HEA, the location containing a fine eutectic structure is accompanied by the formation of low-angle grain boundaries (LAGBs), which is also the region where deformed grains gather, giving rise to improved mechanical strengthening.
format Online
Article
Text
id pubmed-8001620
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-80016202021-03-28 Strengthening Mechanisms in CoCrFeNiX(0.4) (Al, Nb, Ta) High Entropy Alloys Fabricated by Powder Plasma Arc Additive Manufacturing Zhang, Yupeng Shen, Qingkai Chen, Xizhang Jayalakshmi, Subramanian Singh, Ramachandra Arvind Konovalov, Sergey Deev, Vladislav B. Prusov, Evgeny S. Nanomaterials (Basel) Article In high entropy alloys (HEAs), the addition of large-size atoms results in lattice distortion and further leads to solid solution strengthening or precipitation strengthening. However, the relationship between atomic radius, solid solution strengthening and precipitation strengthening has not been discerned yet. In this work, CoCrFeNiX(0.4) (X = Al, Nb, Ta, with an equi-atomic radius) HEAs were prepared by powder plasma arc additive manufacturing (PPA-AM) and evaluated for their mechanical properties. Compression and nano-indentation hardness tests showed that the HEA with Ta showed the best properties. The influence of atomic radius and solid solubility on solid solution strengthening was investigated and the main strengthening mechanism that determines the mechanical properties of the developed HEAs was analyzed. The results showed that (i) the CoCrFeNiAl(0.4) alloy did not show any solid solution strengthening effect and that a clear relation between solid solution strengthening and atomic size was not observed; (ii) in both CoCrFeNiTa(0.4) and CoCrFeNiNb(0.4) HEAs, precipitation strengthening and grain boundary strengthening effects are observed, wherein the difference in mechanical properties between both the alloys can be mainly attributed to the formation of fine eutectic structure in CoCrFeNiTa(0.4); and (iii) from the microstructural analyses, it was identified that, in the CoCrFeNiTa(0.4) HEA, the location containing a fine eutectic structure is accompanied by the formation of low-angle grain boundaries (LAGBs), which is also the region where deformed grains gather, giving rise to improved mechanical strengthening. MDPI 2021-03-12 /pmc/articles/PMC8001620/ /pubmed/33809342 http://dx.doi.org/10.3390/nano11030721 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Zhang, Yupeng
Shen, Qingkai
Chen, Xizhang
Jayalakshmi, Subramanian
Singh, Ramachandra Arvind
Konovalov, Sergey
Deev, Vladislav B.
Prusov, Evgeny S.
Strengthening Mechanisms in CoCrFeNiX(0.4) (Al, Nb, Ta) High Entropy Alloys Fabricated by Powder Plasma Arc Additive Manufacturing
title Strengthening Mechanisms in CoCrFeNiX(0.4) (Al, Nb, Ta) High Entropy Alloys Fabricated by Powder Plasma Arc Additive Manufacturing
title_full Strengthening Mechanisms in CoCrFeNiX(0.4) (Al, Nb, Ta) High Entropy Alloys Fabricated by Powder Plasma Arc Additive Manufacturing
title_fullStr Strengthening Mechanisms in CoCrFeNiX(0.4) (Al, Nb, Ta) High Entropy Alloys Fabricated by Powder Plasma Arc Additive Manufacturing
title_full_unstemmed Strengthening Mechanisms in CoCrFeNiX(0.4) (Al, Nb, Ta) High Entropy Alloys Fabricated by Powder Plasma Arc Additive Manufacturing
title_short Strengthening Mechanisms in CoCrFeNiX(0.4) (Al, Nb, Ta) High Entropy Alloys Fabricated by Powder Plasma Arc Additive Manufacturing
title_sort strengthening mechanisms in cocrfenix(0.4) (al, nb, ta) high entropy alloys fabricated by powder plasma arc additive manufacturing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8001620/
https://www.ncbi.nlm.nih.gov/pubmed/33809342
http://dx.doi.org/10.3390/nano11030721
work_keys_str_mv AT zhangyupeng strengtheningmechanismsincocrfenix04alnbtahighentropyalloysfabricatedbypowderplasmaarcadditivemanufacturing
AT shenqingkai strengtheningmechanismsincocrfenix04alnbtahighentropyalloysfabricatedbypowderplasmaarcadditivemanufacturing
AT chenxizhang strengtheningmechanismsincocrfenix04alnbtahighentropyalloysfabricatedbypowderplasmaarcadditivemanufacturing
AT jayalakshmisubramanian strengtheningmechanismsincocrfenix04alnbtahighentropyalloysfabricatedbypowderplasmaarcadditivemanufacturing
AT singhramachandraarvind strengtheningmechanismsincocrfenix04alnbtahighentropyalloysfabricatedbypowderplasmaarcadditivemanufacturing
AT konovalovsergey strengtheningmechanismsincocrfenix04alnbtahighentropyalloysfabricatedbypowderplasmaarcadditivemanufacturing
AT deevvladislavb strengtheningmechanismsincocrfenix04alnbtahighentropyalloysfabricatedbypowderplasmaarcadditivemanufacturing
AT prusovevgenys strengtheningmechanismsincocrfenix04alnbtahighentropyalloysfabricatedbypowderplasmaarcadditivemanufacturing